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A Novel Dual-Antenna Structure for UHF RFID Tags

机译:一种用于UHF RFID标签的新型双天线结构

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A novel dual-antenna tag structure for UHF radio-frequency identification (RFID) systems is proposed. It is formed by two linearly tapered meander dipole antennas that are perpendicular to each other and connected to the slightly modified tag chip. One of the antennas is for receiving, while the other is for backscattering. The input impedance of the receiving antenna is designed to be conjugate matched to the highly capacitive chip impedance for the maximum power transfer. Meanwhile, the backscattering antenna is alternatively terminated by an open or a short circuit to modulate the backscattered field. By making the input impedance of the backscattering antenna real-valued, the maximum differential RCS may be achieved leading to a longer read range and better reliability. With the aid of the design of experiments (DOE) technique, the proposed dual-antenna structure is designed to fit within a compact area of $32.8times 32.8 {rm mm}^{2}$ while keeping relatively low mutual coupling between the two antennas. The impedance, receiving, and backscattering performances of the proposed dual-antenna structure are measured and simulated, and they agree very well. Also, it is demonstrated that the proposed dual-antenna structure outperforms the conventional single-antenna tag design in every respect.
机译:提出了一种用于UHF射频识别(RFID)系统的新型双天线标签结构。它由两个互相垂直并连接到经过略微修改的标签芯片的线性锥形曲折偶极子天线形成。一根天线用于接收,另一根用于反向散射。接收天线的输入阻抗设计为与高电容芯片阻抗共轭匹配,以实现最大功率传输。同时,后向散射天线通过开路或短路端接以调制后向散射场。通过使后向散射天线的输入阻抗为实值,可以实现最大差分RCS,从而导致更长的读取范围和更好的可靠性。借助实验设计(DOE)技术,将拟议的双天线结构设计为适合 $ 32.8 x 32.8 {rm mm } ^ {2} $ ,同时保持两个天线之间的相互耦合较低。对所提出的双天线结构的阻抗,接收和反向散射性能进行了测量和仿真,它们非常吻合。而且,证明了所提出的双天线结构在各个方面都优于常规的单天线标签设计。

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